MiR-125a-5p regulates the radiosensitivity of laryngeal squamous cell carcinoma via HK2 targeting through the DDR pathway.

IF 3.5 3区 医学 Q2 ONCOLOGY Frontiers in Oncology Pub Date : 2024-08-19 eCollection Date: 2024-01-01 DOI:10.3389/fonc.2024.1438722
Qiwei Wang, Lijun Tan, Yuanhang Lv, Tianjiao Yu, Yuan Chang, Jiangtao Liu, Yanan Sun
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Abstract

Objective: To determine the function of miR-125a-5p in laryngeal squamous cell carcinoma (LSCC), its correlation with radiation sensitivity, and the underlying regulatory mechanism.

Materials and methods: We conducted the analysis on the correlation between miR-125a-5p and head and neck squamous cell carcinoma (HNSCC) using data obtained from The Cancer Genome Atlas (TCGA). The putative gene targeted by miR-125a-5p has been identified as HK2, while the expression levels of miR-125a-5p and HK2 were measured in laryngeal cancer tissues and cells using RT-PCR. MiR-125a-5p and HK2 were introduced into the lentiviral vector and the vector was used to transfect AMC-HN-8 cells. The roles of miR-125a-5p and HK2 in LSCC and on radiosensitivity were determined by evaluating cell growth, examining colony formation, analyzing flow cytometry, and utilizing the single hit multi-target model. Western blotting was used to measure H2AX and rH2AX levels in the DNA damage response (DDR) pathway. The validation of the interaction between miR-125a-5p and HK2 was conducted through the dual-luciferase assay. To further confirm the association between miR-125a-5p and HK2, as well as its influence on radiosensitivity, rescue experiments were performed.

Results: The expression of miR-125a-5p is downregulated in LSCC, while upregulating its expression could suppress cell growth, induce apoptosis, and enhance radiosensitivity. Additionally, HK2 exhibited high expression in LSCC and the biological function was opposite to miR-125a-5p. Western blotting analysis revealed that miR-125a-5p increased rH2AX levels and decreased H2AX levels, conversely, HK2 had the opposite effect on miR-125a-5p. These findings suggested that HK2 may serve as the target gene of miR-125a-5p. The double luciferase assay confirmed the binding of HK2 to miR-125a-5p, and rescue trials confirmed the role of miR-125a-5p in regulating the effects and radiation sensitivity of LSCC by targeting HK2 via the DDR pathway.

Conclusion: By targeting HK2 and impacting the DDR pathway, miR-125a-5p has been found to inhibit cellular proliferation, enhance apoptosis, and heighten radiosensitivity in LSCC.

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MiR-125a-5p通过DDR途径以HK2为靶点调节喉鳞状细胞癌的放射敏感性
摘要确定miR-125a-5p在喉鳞状细胞癌(LSCC)中的功能、其与辐射敏感性的相关性以及潜在的调控机制:我们利用癌症基因组图谱(The Cancer Genome Atlas,TCGA)中的数据对miR-125a-5p与头颈部鳞状细胞癌(HNSCC)的相关性进行了分析。miR-125a-5p靶向的假定基因被确定为HK2,而miR-125a-5p和HK2在喉癌组织和细胞中的表达水平是通过RT-PCR法测定的。将 miR-125a-5p 和 HK2 导入慢病毒载体,并用该载体转染 AMC-HN-8 细胞。通过评估细胞生长、检查集落形成、分析流式细胞术和利用单击多靶点模型,确定了miR-125a-5p和HK2在LSCC中的作用以及对放射敏感性的影响。Western 印迹法用于测量 DNA 损伤应答(DDR)通路中的 H2AX 和 rH2AX 水平。通过双荧光素酶试验验证了 miR-125a-5p 与 HK2 之间的相互作用。为了进一步证实miR-125a-5p与HK2之间的关联及其对放射敏感性的影响,研究人员进行了拯救实验:结果:miR-125a-5p在LSCC中表达下调,而上调其表达可抑制细胞生长、诱导细胞凋亡并增强放射敏感性。此外,HK2在LSCC中呈现高表达,其生物学功能与miR-125a-5p相反。Western印迹分析表明,miR-125a-5p能增加rH2AX水平,降低H2AX水平,而HK2与miR-125a-5p的作用相反。这些发现表明 HK2 可能是 miR-125a-5p 的靶基因。双荧光素酶试验证实了HK2与miR-125a-5p的结合,而拯救试验则证实了miR-125a-5p通过DDR途径靶向HK2,在调节LSCC的效应和辐射敏感性中的作用:结论:研究发现,miR-125a-5p通过靶向HK2和影响DDR通路,可抑制LSCC的细胞增殖、促进细胞凋亡并提高辐射敏感性。
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来源期刊
Frontiers in Oncology
Frontiers in Oncology Biochemistry, Genetics and Molecular Biology-Cancer Research
CiteScore
6.20
自引率
10.60%
发文量
6641
审稿时长
14 weeks
期刊介绍: Cancer Imaging and Diagnosis is dedicated to the publication of results from clinical and research studies applied to cancer diagnosis and treatment. The section aims to publish studies from the entire field of cancer imaging: results from routine use of clinical imaging in both radiology and nuclear medicine, results from clinical trials, experimental molecular imaging in humans and small animals, research on new contrast agents in CT, MRI, ultrasound, publication of new technical applications and processing algorithms to improve the standardization of quantitative imaging and image guided interventions for the diagnosis and treatment of cancer.
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